4.5 Article

JAK-STAT core cancer pathway: An integrative cancer interactome analysis

期刊

JOURNAL OF CELLULAR AND MOLECULAR MEDICINE
卷 26, 期 7, 页码 2049-2062

出版社

WILEY
DOI: 10.1111/jcmm.17228

关键词

blood cancer; breast cancer; colorectal cancers; JAK; STAT pathway in cancers; liver cancers; lung cancer; protein-protein interactions; systems medicine

资金

  1. NSERC [RGPIN-2014-05767]
  2. CIHR [MOP-130424, MOP-137036]
  3. Canada Research Chair [950-232042]
  4. Canadian Cancer Society [703963]
  5. Canadian Breast Cancer Foundation [705456]
  6. CFI [33536]
  7. Ontario Research Fund [34876]
  8. EU consortia ERAPerMed 'JAKSTAT-TARGET'
  9. ERANETPLL
  10. European Research Council
  11. Austrian Science Fund [SFB-F04707, SFB-F06105]

向作者/读者索取更多资源

This study conducted a comprehensive review and in silico analysis of reported data on STAT-linked diseases, proposing rational targeting approaches for therapeutic intervention in major cancer categories. The study also revealed member-specific STAT activity and identified surprising roles for EGFR family members and sex steroid hormone receptor ESR1 in oncogenic STAT function.
Through a comprehensive review and in silico analysis of reported data on STAT-linked diseases, we analysed the communication pathways and interactome of the seven STATs in major cancer categories and proposed rational targeting approaches for therapeutic intervention to disrupt critical pathways and addictions to hyperactive JAK/STAT in neoplastic states. Although all STATs follow a similar molecular activation pathway, STAT1, STAT2, STAT4 and STAT6 exert specific biological profiles associated with a more restricted pattern of activation by cytokines. STAT3 and STAT5A as well as STAT5B have pleiotropic roles in the body and can act as critical oncogenes that promote many processes involved in cancer development. STAT1, STAT3 and STAT5 also possess tumour suppressive action in certain mutational and cancer type context. Here, we demonstrated member-specific STAT activity in major cancer types. Through systems biology approaches, we found surprising roles for EGFR family members, sex steroid hormone receptor ESR1 interplay with oncogenic STAT function and proposed new drug targeting approaches of oncogenic STAT pathway addiction.

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